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Performance study of solar cell arrays based on a Trough Concentrating Photovoltaic/Thermal system

机译:基于槽式聚光光伏/热系统的太阳能电池阵列性能研究

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摘要

The performances of solar cell arrays based on a Trough Concentrating Photovoltaic/Thermal (TCPV/T) system have been studied via both experiment and theoretical calculation. The I-V characteristics of the solar cell arrays and the output performances of the TCPV/T system demonstrated that among the investigated four types of solar cell arrays, the triple junction GaAs cells possessed good performance characteristics and the polysilicon cells exhibited poor performance characteristics under concentrating conditions. The optimum concentration ratios for the single crystalline silicon cell, the Super cells and the GaAs cells were also studied by experiments. The optimum concentration ratios for the single crystalline silicon cells and Super cells were 4.23 and 8.46 respectively, and the triple junction GaAs cells could work well at higher concentration ratio. Besides, some theoretical calculations and experiments were performed to explore the influences of the series resistances and the working temperature. When the series resistances R_s changed from 0 Ω to 1 Ω, the maximum power P_m of the single crystalline silicon, the poly-crystalline silicon, the Super cell and the GaAs cell arrays decreased by 67.78%, 74.93%, 77.30% and 58.07% respectively. When the cell temperature increased by 1 K, the short circuit current of the four types of solar cell arrays decreased by 0.11818 A, 0.05364 A, 0.01387 A and 0.00215 A respectively. The research results demonstrated that the output performance of the solar cell arrays with lower series resistance was better and the working temperature had a negative impact on the current under concentration. In addition, solar irradiation intensity had certain effects on the solar cell's performance. For the crystalline silicon solar cell arrays, when the solar direct radiation exceeded a certain value, the I-V curves almost became a straight line and the output performances decreased due to the high series resistance leading to the high power loss. For the triple junction GaAs solar cell array, its performance was always excellent.
机译:通过实验和理论计算,研究了基于槽式聚光光伏/热(TCPV / T)系统的太阳能电池阵列的性能。太阳能电池阵列的IV特性和TCPV / T系统的输出性能表明,在所研究的四种类型的太阳能电池阵列中,三结GaAs电池具有良好的性能特性,而多晶硅电池在浓缩条件下的性能特性较差。 。还通过实验研究了单晶硅电池,Super电池和GaAs电池的最佳浓度比。单晶硅电池和超级电池的最佳浓度比分别为4.23和8.46,三结GaAs电池在较高的浓度比下可以很好地工作。此外,进行了一些理论计算和实验,以探讨串联电阻和工作温度的影响。当串联电阻R_s从0Ω变为1Ω时,单晶硅,多晶硅,超级电池和GaAs电池阵列的最大功率P_m下降了67.78%,74.93%,77.30%和58.07%分别。当电池温度升高1 K时,四种类型的太阳能电池阵列的短路电流分别降低0.11818 A,0.05364 A,0.01387 A和0.00215A。研究结果表明,串联电阻较低的太阳能电池阵列的输出性能较好,工作温度对集中电流有不利影响。另外,太阳辐射强度对太阳能电池的性能有一定影响。对于晶体硅太阳能电池阵列,当太阳直射辐射超过一定值时,I-V曲线几乎变为直线,并且由于高串联电阻导致输出性能下降,从而导致高功率损耗。对于三结GaAs太阳能电池阵列,其性能始终非常出色。

著录项

  • 来源
    《Applied Energy》 |2011年第9期|p.3218-3227|共10页
  • 作者单位

    Solar Energy Research Institute, Yunnan Normal University, 650092 Kunming, China;

    Solar Energy Research Institute, Yunnan Normal University, 650092 Kunming, China;

    Solar Energy Research Institute, Yunnan Normal University, 650092 Kunming, China;

    Solar Energy Research Institute, Yunnan Normal University, 650092 Kunming, China;

    Texas Engineering Experiment Station, College Station, TX 77843, USA;

    Solar Energy Research Park and Academy, Northern New Mexico College, Espanola NM 87532, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    trough concentration; TCPV/T system; concentration ratio; series resistances; cell temperature;

    机译:槽浓度;TCPV / T系统;浓度比;串联电阻;电池温度;

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